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A Movable Phantom Design for Quantitative Evaluation of Motion Correction Studies on High Resolution PET Scanners

机译:用于定量评估高分辨率PET扫描仪运动校正研究的可移动幻影设计

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摘要

Head movements during brain imaging using high resolution positron emission tomography (PET) impair the image quality which, along with the improvement of the spatial resolution of PET scanners, in general, raises the importance of motion correction. Here, we present a new design for an automatic, movable, mechanical PET phantom to simulate patients' head movements while being scanned. This can be used for evaluating motion correction methods. A low-cost phantom controlled by a rotary stage motor was built and tested for axial rotations of $1^{circ}-10^{circ}$ with the multiple acquisition frame method. The phantom is able to perform stepwise and continuous axial rotations with submillimeter accuracy, and the movements are repeatable. The scans were acquired on the high resolution research tomograph dedicated brain scanner. The scans were reconstructed with the new 3-D ordered subset expectation maximization algorithm with modeling of the point spread function (3DOSEM-PSF), and they were corrected for motions based on external tracking information using the Polaris Vicra real-time stereo motion-tracking system. The new automatic, movable phantom has a robust design and is a potential quality assessment tool for the development and evaluation of future motion correction methods.
机译:使用高分辨率正电子发射断层扫描(PET)在大脑成像过程中的头部运动会损害图像质量,这通常与PET扫描仪的空间分辨率的提高一起提高了运动校正的重要性。在这里,我们提出了一种自动,可移动,机械式PET体模的新设计,可模拟患者在扫描时头部的运动。这可用于评估运动校正方法。建立了由旋转台电机控制的低成本模型,并使用多重采集框架方法测试了$ 1 ^ {circ} -10 ^ {circ} $的轴向旋转。幻影能够以亚毫米精度执行步进和连续的轴向旋转,并且运动是可重复的。扫描是在高分辨率研究断层扫描仪专用大脑扫描仪上进行的。使用新的3-D有序子集期望最大化算法和点扩散函数(3DOSEM-PSF)建模来重建扫描,并使用Polaris Vicra实时立体声运动跟踪基于外部跟踪信息对运动进行校正。系统。新型自动可移动体模具有坚固的设计,是用于开发和评估未来运动校正方法的潜在质量评估工具。

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